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Full-Duplex opportunistic relay selection in future spectrum-sharing networks

机译:未来频谱共享网络中的全双工机会中继选择

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We propose and analyze the performance of full-duplex relay selection in primary/secondary spectrum-sharing networks. Contrary to half-duplex relaying, full-duplex relaying (FDR) enables simultaneous listening/forwarding at the secondary relay, thereby allowing for a higher spectral efficiency. However, since the source and relay simultaneously transmit in FDR, their superimposed signal at the primary receiver should now satisfy the existing interference constraint which can considerably limit the secondary network throughput. In this regard, relay selection can offer an adequate solution to boost the secondary throughput while satisfying the imposed interference limit. We first analyze the performance of opportunistic relay selection among a cluster of full-duplex decode-and-forward relays with self-interference by deriving the exact cumulative distribution function of its end-to-end signal-to-noise ratio. Second, we evaluate the end-to-end performance of relay selection with interference constraints due to the presence of a primary receiver. Finally, the presented exact theoretical findings are verified by numerical simulations.
机译:我们提出并分析了初级/次级频谱共享网络中全双工继电器选择的性能。与半双工中继相反,全双工中继(FDR)能够在二级继电器处同时收听/转发,从而允许更高的光谱效率。然而,由于源和继电器同时在FDR中发送,因此主接收器处的叠加信号现在应该满足现有的干扰约束,这可以大大限制次要网络吞吐量。在这方面,中继选择可以提供足够的解决方案来提高次级吞吐量,同时满足施加的干扰极限。首先通过导出其端到端信噪比的精确累积分布函数,分析机会中继选择的机会主义继电器选择的性能。其次,由于主接收器的存在,我们评估了通过干扰约束的继电器选择的端到端性能。最后,通过数值模拟验证了所提出的精确理论发现。

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